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Helminthic therapy: improving mucosal barrier function
Wolff, Martin J; Broadhurst, Mara J; Loke, P'ng
The epidemiology of autoimmune diseases and helminth infections led to suggestions that helminths could improve inflammatory conditions, which was then tested using animal models. This has translated to clinical investigations aimed at the safe and controlled reintroduction of helminthic exposure to patients suffering from autoimmune diseases (so-called 'helminthic therapy') in an effort to mitigate the inflammatory response. In this review, we summarize the results of recent clinical trials of helminthic therapy, with particular attention to mechanisms of action. Whereas previous reviews have emphasized immune regulatory mechanisms activated by helminths, we propose that enhancement of mucosal barrier function may have an equally important role in improving conditions of inflammatory bowel diseases.
PMCID:4015520
PMID: 22464690
ISSN: 1471-4922
CID: 166509
Plasma Levels of Insulinotropic and Digestive Hormones Predict the Risk of Colonic Adenomas [Meeting Abstract]
Wolff, Martin J; Joseph, Neal; Huie, Maryann L; Quijano, Sergio; Muakkassa, Nora; Martiniuk, Frank; Perez-Perez, Guillermo I; Francois, Fritz
ISI:000275277203085
ISSN: 0016-5085
CID: 1716332
Isoaspartyl post-translational modification triggers anti-tumor T and B lymphocyte immunity
Doyle, Hester A; Zhou, Jing; Wolff, Martin J; Harvey, Bohdan P; Roman, Robert M; Gee, Renelle J; Koski, Raymond A; Mamula, Mark J
A hallmark of the immune system is the ability to ignore self-antigens. In attempts to bypass normal immune tolerance, a post-translational protein modification was introduced into self-antigens to break T and B cell tolerance. We demonstrate that immune tolerance is bypassed by immunization with a post-translationally modified melanoma antigen. In particular, the conversion of an aspartic acid to an isoaspartic acid within the melanoma antigen tyrosinase-related protein (TRP)-2 peptide-(181-188) makes the otherwise immunologically ignored TRP-2 antigen immunogenic. Tetramer analysis of iso-Asp TRP-2 peptide-immunized mice demonstrated that CD8+ T cells not only recognized the isoaspartyl TRP-2 peptide but also the native TRP-2 peptide. These CD8+ T cells functioned as cytotoxic T lymphocytes, as they effectively lysed TRP-2 peptide-pulsed targets both in vitro and in vivo. Potentially, post-translational protein modification can be utilized to trigger strong immune responses to either tumor proteins or potentially weakly immunogenic pathogens.
PMID: 16950786
ISSN: 0021-9258
CID: 1654182
Targeting antigen to CD19 on B cells efficiently activates T cells
Yan, Jun; Wolff, Martin J; Unternaehrer, Julia; Mellman, Ira; Mamula, Mark J
CD19 is a B cell-surface molecule that participates as an important regulatory signaling complex for antigen bound at the surface by Ig. Triggering of CD19 through its linkage with CD21 amplifies signals transduced through the Src family kinases and modulates B cell differentiation in response to antigen. This study examines the kinetics of antigen uptake and processing of antigen directly targeted to the CD19 protein on purified B cells. We have demonstrated that the antigen internalized within minutes through CD19 forms a cap at the B cell surface and can be found within lysosomes in the cytoplasm in 90 min. B cells acquiring antigen via CD19 express elevated levels of B7-1 and B7-2 co-stimulatory molecules. Moreover, antigen-anti-CD19 complexes administered intravenously bind B cells in vivo and activate antigen-specific T cells more efficiently than non-specific uptake and in a manner similar to antigen taken up through surface IgM on B cells. This work illustrates an important and previously unrecognized mechanism for targeting proteins to B lymphocytes for antigen presentation and activation of CD4 T cells.
PMID: 15967786
ISSN: 0953-8178
CID: 1654172